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A study on the efficient flexible multibody dynamics modeling of deep seabed integrated mining system with subsystem synthesis method

Authors
Yun, H.-S.Kim, S.-S.Lee, C.H.Kim, H.-W.
Issue Date
2015
Publisher
Korean Society of Mechanical Engineers
Keywords
Deep-seabed integrated mining system; Flexible multibody dynamics; Subsystem synthesis method
Citation
Transactions of the Korean Society of Mechanical Engineers, A, v.39, no.12, pp 1213 - 1220
Pages
8
Journal Title
Transactions of the Korean Society of Mechanical Engineers, A
Volume
39
Number
12
Start Page
1213
End Page
1220
URI
https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/8597
DOI
10.3795/KSME-A.2015.39.12.1213
ISSN
1226-4873
Abstract
A deep seabed integrated mining system consists of a mining vessel, a lifting pipe, a buffer station, a flexible pipe, and a mining robot for collecting manganese nodules. Recently, the concept of multiple mining robots was introduced to enhance to mining productivity. In this paper, the subsystem synthesis method was applied to the deep seabed integrated mining system in order to improve the efficiency of system analysis and to facilitate its extension to the system of multiple mining robots. Large deflections of the lifting and flexible pipe were considered by dividing a flexible pipe into several substructures, and applying flexible multibody dynamics to each substructure. Theoretical study has been carried out for the efficiency of the subsystem synthesis method for the integrated mining system, by comparing the arithmetic operational counts of the subsystem synthesis method with those of the conventional method. ? 2015 The Korean Society of Mechanical Engineers.
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